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Debris Basin and Deflection Berm Design for Fire-Related Debris-Flow Mitigation

机译:减少与火有关的泥石流的泥石盆和弯道设计

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摘要

Debris flows are hazardous because of their poor predictability, high impact forces, and ability to deposit large quantities of sediment in inundated areas. To minimize the risk to developments on alluvial fans, debris-flow mitigation structures may be required. This study reviewed the state of practice for the design of two types of debris-flow mitigation structures: basins and deflection berms. Published guidelines for these structures are rare, and there appears to be little standardization. Recommended design improvements, particularly for fire-related debris flows, include incorporating several recent developments in debris-flow mitigation design, reducing subjectivity, and enhancing the technical basis for the designs. Specific shortcomings of existing design methodologies include techniques for predicting debris-flow volume, specifications for berm geometry, impact loading considerations, and lack of flexibility in outlet works design, among others. Proposed solutions and guidelines for these issues are presented.
机译:泥石流具有可预测性差, 高冲击力以及在淹没区域沉积大量 沉淀物的能力,因此具有危险性。为了最大程度地降低冲积扇发展的风险,可能需要减缓泥石流的结构。 本研究回顾了 两种类型的泥石流缓和结构:盆地和偏转 草丛。这些结构的已发布指南很少,并且 似乎很少标准化。推荐的设计 改进措施,特别是针对与火有关的泥石流的改进措施,包括 并结合了减轻泥石流的最新发展 设计,减少了主观性并增强了设计的技术基础 。现有设计方法 的特定缺点包括预测泥石流量的技术,护堤几何形状的规格 ,冲击载荷考虑因素以及缺乏 灵活性插座工程设计等。提出了建议的解决方案 和这些问题的指南。

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  • 来源
    《Environmental and Engineering Geoscience》 |2008年第4期|297-313|共17页
  • 作者单位

    Colorado School of Mines, Department of Geology and Geological Engineering, 1516 Illinois Street, Golden, CO 80401;

    Colorado School of Mines, Department of Geology and Geological Engineering, 1516 Illinois Street, Golden, CO 80401;

    Colorado School of Mines, Department of Geology and Geological Engineering, 1516 Illinois Street, Golden, CO 80401;

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